Xiphias gladius (swordfish): 120804643
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Entry
120804643 CDS
T07311
Symbol
adam28
Name
(RefSeq) disintegrin and metalloproteinase domain-containing protein 28 isoform X1
KO
K08614
disintegrin and metalloproteinase domain-containing protein 28 [EC:3.4.24.-]
Organism
xgl
Xiphias gladius (swordfish)
Brite
KEGG Orthology (KO) [BR:
xgl00001
]
09180 Brite Hierarchies
09181 Protein families: metabolism
01002 Peptidases and inhibitors [BR:
xgl01002
]
120804643 (adam28)
Peptidases and inhibitors [BR:
xgl01002
]
Metallo peptidases
Family M12: astacin/adamalysin family
120804643 (adam28)
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Gene cluster
GFIT
Motif
Pfam:
Reprolysin
ADAM_CR
Disintegrin
Reprolysin_5
Pep_M12B_propep
Reprolysin_4
Reprolysin_3
Reprolysin_2
Peptidase_M10
Peptidase_M66
Motif
Other DBs
NCBI-GeneID:
120804643
NCBI-ProteinID:
XP_040010062
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Position
LG19:complement(25893567..25912377)
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AA seq
772 aa
AA seq
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MTRTLLLWILILNASLKPSESHGNEFEEVKDYEVVRPVRLHTVRKRHAEYLRPETITYAM
TVGGEHIEMQLEKNDGLLTKDYTETYYKEDGTQVTTTPNDMDHCYYHGRIVNDSKSSVSI
STCDGLRGYFRTSAQRYLIEPLSGGDDGDHAVMTVDEKKNFTPSVCGVTNTSWSDDFEPP
TSRSRSRSGAVSIIQQKKYIELFLVADNREYVKMKRDQRELRKKIFEMVNFVNLVYKPLR
TFIALVGLEIWSNGDLITVTPPAGANLDAFTRWRNSELVKRKKHDNAHLISGIDFDGATV
GLAFIGTLCSGNSVGVVQDHSDRAIAVGATLAHEMGHNLGMDHDDSSACICAGDTCIMAA
ALSWNVPRSFSSCSSNKYERYLTSRRPSCLLDKPDYTSLVSLSVCGNGFVETGEQCDCGT
VEECTNPCCNATTCTLNEGSQCAEGDCCENCKILPPTRECRSKQDDCDLSEYCDGKSATC
PEDVFAVNGIPCDGGLGYCYNGQCPQRQNQCVKMYGPSAIEARPSCYHQNTRGTYYGFCR
RPSNDRYIPCQREDMFCGKLICHNGNDNPNYGRMVRVGDCKAAFFDDYTKDYGQVDTGTK
CGVGKVCSQNQCVDLETAYKNTNCSAECPGHAVCNHRSECQCEPGWIPPYCNSEDEAFRT
LSTGQTVAIAVIVILVVLGIIAAVVGFVWKTRQRPMLPMAHAQRKQPAEDRSIHRLNKAP
VSSQPKPVPKTGRPKPKGPPPPPPPAGNRPKPPSHNYIAARQGLRAVPPPKV
NT seq
2319 nt
NT seq
+upstream
nt +downstream
nt
atgacgcgaactctcttattgtggatcctcatcctaaatgcctcactcaaaccctcagaa
agccatggaaatgagtttgaggaagtgaaggactatgaggtggttcgacccgtcagactt
cacacagtcagaaaaagacatgcagagtacctcagaccagagactatcacgtatgcaatg
acagtgggaggagaacacattgaaatgcaactagaaaaaaatgatggattactcaccaaa
gactacactgagacttactacaaagaagatgggactcaagtcaccacaaccccaaatgac
atggatcactgctattatcatgggaggattgtgaatgacagcaagtcgtctgttagcatt
agcacttgtgatggactcaggggttacttcagaacatctgcgcagaggtacctgattgag
cccttgtctggtggcgatgatggggatcatgcagtgatgactgtcgatgagaagaagaac
ttcactccttcagtgtgtggtgtcaccaacaccagctggagtgatgactttgaaccccca
acgagccgcagccgctccagatcaggggctgtatctattatccagcaaaagaaatacatt
gagctcttccttgttgctgataaccgtgagtatgtgaagatgaagcgagatcagagagag
ctgagaaagaagatatttgaaatggtcaactttgtcaacttggtctataagcccctgagg
accttcattgctctggttgggctagagatctggtccaatggtgacttgatcactgtgacc
cccccggccggagccaacctggacgctttcacgaggtggaggaactctgaactggtcaag
aggaaaaagcatgacaacgcacatctcattagtggtattgactttgacggcgcaactgtg
ggactggctttcattgggactctttgctctggtaactctgttggggtagtacaggatcac
agtgaccgggccattgcagtgggagctacactggctcatgagatgggccataacctgggc
atggaccatgatgactccagtgcctgcatttgtgctggggacacctgcatcatggctgca
gccctcagctggaacgttcctcggtctttcagtagctgcagcagcaataaatatgaaaga
tacctgacaagccgcagacccagctgtctgcttgacaaaccagactacacgagtttggtg
tctctttcagtctgcggaaacgggtttgtggagacaggagagcagtgcgactgtggcacc
gtggaggagtgcaccaacccatgttgcaatgccaccacctgcactctgaatgagggttca
cagtgtgctgaaggggactgctgtgagaactgtaagatcctgccccccaccagggagtgc
cgcagtaagcaggatgattgtgatctgtcagagtactgtgacgggaagagcgccacctgt
cctgaggacgtgtttgctgtgaatggcatcccatgtgacggaggcctgggatactgctac
aatggccagtgtccacagaggcaaaaccagtgtgtcaagatgtatggaccaagtgctata
gaggcccgtccgtcctgctatcaccagaacaccagaggaacctactatggcttctgcagg
cgcccctcaaacgaccggtacatcccctgccagcgagaagacatgttttgtgggaagctc
atctgccacaatggtaatgataacccaaactatggccgcatggtgagggttggtgactgc
aaggcagctttcttcgatgactacactaaagactacggccaggtggacactgggactaaa
tgtggggttggaaaggtgtgcagccagaatcagtgcgtagatcttgagacagcttacaaa
aacacaaactgttctgcagaatgcccaggccatgctgtgtgcaatcacaggagtgagtgt
cagtgtgagcctggatggattcctccttactgcaattcagaagatgaagctttccgtact
ctttctactggacaaactgttgccattgcagtgatagttatactagtggttctaggtatc
atcgctgccgtggtagggttcgtctggaaaacccgacaacgtcccatgttgccaatggca
catgcccagaggaagcagccggcagaggacagatccattcaccgcctaaacaaagcacca
gtttccagtcaacccaagccagtgccaaagactggaaggccaaagcccaaaggacctcca
cctccaccacctccagcagggaacagacctaagcccccgagccacaactacatagctgca
cgtcagggtctgagggcagtacctccaccaaaggtctga
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